On-chip-triggered all-optical switching is a key component of ultrahigh-speed and ultrawide-band information processing chips. This switching technique, the operating states of which are triggered by a remote control light, paves the way for the realization of cascaded and complicated logic processing circuits and quantum solid chips. Here, a strategy is reported to realize on-chip remotely-triggered, ultralow-power, ultrafast, and nanoscale all-optical switching with high switching efficiency in integrated photonic circuits. It is based on control-light induced dynamic modulation of the coupling properties of two remotely-coupled silicon photonic crystal nanocavities, and extremely large optical nonlinearity enhancement associated with eps...
An ultrafast low-power all-optical switching is realized in a near-resonant enhanced nonlinear photo...
Integrated chip-level photonics has the potential to revolutionize future computer systems by elimin...
The potential of terabit-per-second fibre optics can be unlocked with emerging all-optical networks ...
Ultrafast all-optical switching, possessing the unique function of light controlling light, is an es...
We demonstrate experimentally all-optical switching on a silicon chip at telecom wavelengths. The sw...
An ultrafast photonic crystal all-optical switching is realized, which is made from nano-Ag:MEH-PPV ...
Photonic crystals, materials with periodic dielectric structures, are able to control the propagatio...
As a novel and artificial photonic material, photonic crystal possesses unique photonic bandgap prop...
All-optical switching effect is realized based on dynamically tunable coupling of nanocomposite phot...
All-optical switching effect is realized based on dynamically tunable coupling of nanocomposite phot...
An ultralow-power all-optical logic data distributor with dual address bits is realized. The device ...
textElectronic microchips have now firmly plateaued in switching speed. A promising solution for inc...
textElectronic microchips have now firmly plateaued in switching speed. A promising solution for inc...
We demonstrate a silicon optical switch that can reroute optical signals within a switching time of ...
Integrated chip-level photonics has the potential to revolutionize future computer systems by elimin...
An ultrafast low-power all-optical switching is realized in a near-resonant enhanced nonlinear photo...
Integrated chip-level photonics has the potential to revolutionize future computer systems by elimin...
The potential of terabit-per-second fibre optics can be unlocked with emerging all-optical networks ...
Ultrafast all-optical switching, possessing the unique function of light controlling light, is an es...
We demonstrate experimentally all-optical switching on a silicon chip at telecom wavelengths. The sw...
An ultrafast photonic crystal all-optical switching is realized, which is made from nano-Ag:MEH-PPV ...
Photonic crystals, materials with periodic dielectric structures, are able to control the propagatio...
As a novel and artificial photonic material, photonic crystal possesses unique photonic bandgap prop...
All-optical switching effect is realized based on dynamically tunable coupling of nanocomposite phot...
All-optical switching effect is realized based on dynamically tunable coupling of nanocomposite phot...
An ultralow-power all-optical logic data distributor with dual address bits is realized. The device ...
textElectronic microchips have now firmly plateaued in switching speed. A promising solution for inc...
textElectronic microchips have now firmly plateaued in switching speed. A promising solution for inc...
We demonstrate a silicon optical switch that can reroute optical signals within a switching time of ...
Integrated chip-level photonics has the potential to revolutionize future computer systems by elimin...
An ultrafast low-power all-optical switching is realized in a near-resonant enhanced nonlinear photo...
Integrated chip-level photonics has the potential to revolutionize future computer systems by elimin...
The potential of terabit-per-second fibre optics can be unlocked with emerging all-optical networks ...